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In Vivo ; 30(6): 899-903, 2016.
Article in English | MEDLINE | ID: mdl-27815478

ABSTRACT

BACKGROUND/AIM: The signal-averaging (SA) technique is used to record high-resolution electrocardiograms (HRECGs) showing cardiac micropotentials. We aimed to develop a non-invasive signal-averaging-based portable bedside device to determine His-ventricle interval. PATIENTS AND METHODS: After amplifying the HRECG recordings, signal duration and voltage can be measured up to four decimal precision. To validate our system, comparison of the invasively and non-invasively determined HV intervals has been performed in 20 patients. RESULTS: Our workgroup has developed a system capable of displaying and measuring cardiac micropotentials on storable ECG. Neither related paired-sample T-test (p=0.263) nor Wilcoxon's non-parametric signed ranks test (p=0.245) showed significant deviations of the HV intervals. Furthermore, related paired-sample T-test showed strong correlation (corr=0.910, p<0.001) between HV intervals determined by electrophysiology (EP) and non-invasive measurements. CONCLUSION: Our research group managed to assemble and validate an easy to use device capable of determining HV intervals even under ambulatory conditions.


Subject(s)
Bundle of His/physiology , Cardiac Electrophysiology , Cardiovascular Physiological Phenomena , Electrocardiography/methods , Adult , Electrocardiography/instrumentation , Female , Heart Ventricles , Humans , Male , Reproducibility of Results , Sensitivity and Specificity , Tachycardia, Paroxysmal/diagnosis , Tachycardia, Paroxysmal/physiopathology , Tachycardia, Sinoatrial Nodal Reentry/diagnosis , Tachycardia, Sinoatrial Nodal Reentry/physiopathology , Tachycardia, Supraventricular/diagnosis , Tachycardia, Supraventricular/physiopathology
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